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Proteasome inhibition can induce an autophagy-dependent apical activation of caspase-8.

机译:蛋白酶体抑制作用可诱导caspase-8的自噬依赖性心尖活化。

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Antiapoptotic Bcl-2 family proteins are often highly expressed in chemotherapy-resistant cancers and impair mitochondrial outer membrane permeabilisation (MOMP), an important requirement for caspase activation via the intrinsic apoptosis pathway. Interestingly, although Bcl-2 overexpression in HeLa cervical cancer cells abrogated caspase processing in response to intrinsic apoptosis induction by staurosporine, tunicamycin or etoposide, residual caspase processing was observed following proteasome inhibition by bortezomib ([(1R)-3-methyl-1-({(2S)-3-phenyl-2-[(pyrazin-2-ylcarbonyl)amino]propanoyl}amino) butyl]boronic acid), epoxomicin (N-acetyl-N-methyl-lisoleucyl-L-isoleucyl-N-[(1S)-3-methyl-1-[[(2R)-2-methyloxira nyl]carbonyl]butyl]-L-threoninamide) or MG-132 (N-(benzyloxycarbonyl)leucinylleucinylleucinal). Similar responses were found in Bcl-2-overexpressing H460 NSCLC cells and Bax/Bak-deficient mouse embyronic fibroblasts. Mild caspase processing resulted in low DEVDase activities, which were MOMP independent and persisted for long periods without evoking immediate cell death. Surprisingly, depletion of caspase-3 and experiments in caspase-7-depleted MCF-7-Bcl-2 cells indicated that the DEVDase activity did not originate from effector caspases. Instead, Fas-associated death domain (FADD)-dependent caspase-8 activation was the major contributor to the slow, incomplete substrate cleavage. Caspase-8 activation was independent of death ligands, but required the induction of autophagy and the presence of Atg5. Depletion of XIAP or addition of XIAP-antagonising peptides resulted in a switch towards efficient apoptosis execution, suggesting that the requirement for MOMP was bypassed by activating the caspase-8/caspase-3 axis. Combination treatments of proteasome inhibitors and XIAP antagonists therefore represent a promising strategy to eliminate highly resistant cancer cells, which overexpress antiapoptotic Bcl-2 family members.
机译:抗凋亡的Bcl-2家族蛋白通常在耐化疗药物的癌症中高表达,并损害线粒体外膜通透性(MOMP),这是通过内在凋亡途径激活caspase的重要要求。有趣的是,尽管Hela宫颈癌细胞中Bcl-2的过表达废除了胱天蛋白酶对由星形孢菌素,衣霉素或依托泊苷诱导的内在凋亡诱导的反应,但在硼替佐米([(1R)-3-methyl-1- ({(2S)-3-苯基-2-[(吡嗪-2-基羰基氨基)丙酰基}氨基)丁基]硼酸),环氧肟酸(N-乙酰基-N-甲基-异亮氨酰-L-异亮氨酰-N- [(1S)-3-甲基-1-[[((2R)-2-甲基肟基]羰基]丁基] -L-苏氨酸酰胺)或MG-132(N-(苄氧基羰基)亮氨酰亮氨酰亮氨酸)。在过表达Bcl-2的H460 NSCLC细胞和Bax / Bak缺陷型小鼠胚胎成纤维细胞中发现了类似的反应。轻度的半胱天冬酶处理导致DEVDase活性降低,而DEVDase活性不依赖于MOMP,并且可以长时间持续而不会引起立即的细胞死亡。出乎意料的是,caspase-3的耗竭和在caspase-7耗竭的MCF-7-Bcl-2细胞中进行的实验表明,DEVDase活性并非源自效应子caspase。相反,与Fas相关的死亡域(FADD)依赖性的caspase-8激活是缓慢,不完全的底物裂解的主要因素。 Caspase-8激活与死亡配体无关,但需要诱导自噬和Atg5的存在。 XIAP的耗竭或XIAP拮抗肽的添加导致转向有效的凋亡执行,这表明通过激活caspase-8 / caspase-3轴可以绕开对MOMP的需求。因此,蛋白酶体抑制剂和XIAP拮抗剂的联合治疗代表了一种有希望的策略,以消除高表达抗凋亡Bcl-2家族成员的高耐药性癌细胞。

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